IP Library Granted Patent US 9,518,924
Granted Patent B2
US 9,518,924 · App. 14/499,813 · Granted Dec 13, 2016

Fluoroscopy apparatus and fluoroscopy apparatus operating method

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Quick Facts
Patent No.
US 9,518,924
App. No.
14/499,813
Filed
Sep 29, 2014
Granted
Dec 13, 2016
Kind
B2
Art Unit
2666
USPC
382/132
Abstract

The invention provides a fluoroscopy apparatus including an image-capturing device that acquires a fluorescence image of a subject; a sensitivity adjusting portion that sets a sensitivity of the image-capturing device to fluorescence on the basis of a gradation value of the fluorescence image; a notifying portion that extracts a lesion part from the fluorescence image acquired by the image-capturing device with the sensitivity set by the sensitivity adjusting portion and presents it to an operator; and a display switching portion that displays the fluorescence image on a display unit when the sensitivity in the image-capturing device is equal to or less than a predetermined threshold and that presents information showing the existence of the lesion part on the notifying portion when the sensitivity is greater than the predetermined threshold.

Claims (28)

1. A fluoroscopy apparatus comprising:

an excitation light source configured to radiate excitation light onto a subject;

a fluorescence-image acquisition sensor configured to acquire a fluorescence image by capturing fluorescence generated in the subject by irradiating the subject with the excitation light from the excitation light source; and

a processor configured to:

calculate a gradation value of the fluorescence image acquired by the fluorescence-image acquisition sensor;

set a sensitivity of the fluorescence-image acquisition sensor to the fluorescence on the basis of the gradation value;

extract a region having a gradation value higher than a predetermined gradation threshold value from the fluorescence image acquired by the fluorescence-image acquisition sensor with the set sensitivity;

generate a marker showing the existence of the region;

control a display to display the marker when the set sensitivity is greater than a predetermined sensitivity threshold; and

control the display to display the fluorescence image acquired by the fluorescence-image acquisition sensor instead of the marker when the set sensitivity is equal to or less than the predetermined sensitivity threshold.

2. The fluoroscopy apparatus according to claim 1 , further comprising:

an illumination light source configured to radiate illumination light onto the subject; and

a reference-image acquisition sensor configured to acquire a reference image by capturing reflected light reflected from the subject when the illumination light from the illumination light source is radiated onto the subject,

wherein the marker shows the position of the region, and

wherein the processor is configured to:

control the display to display the fluorescence image in a superimposed manner on the reference image acquired by the reference-image acquisition sensor when the set sensitivity is equal to or less than the predetermined sensitivity threshold; and

control the display to display the marker in a superimposed manner on the reference image when the set sensitivity is greater than the predetermined sensitivity threshold.

3. The fluoroscopy apparatus according to claim 2 ,

wherein the processor is further configured to:

generate a corrected fluorescence image in which the fluorescence image is corrected by dividing the fluorescence image using the reference image; and

extract the region from the corrected fluorescence image.

4. A fluoroscopy apparatus operating method comprising:

calculating a gradation value of a fluorescence image of a subject acquired by a fluorescence-image acquisition sensor;

setting a sensitivity of the fluorescence-image acquisition sensor to the fluorescence on the basis of the gradation value;

extracting a region having a gradation value higher than a predetermined gradation threshold value from the fluorescence image acquired by the fluorescence-image acquisition sensor with the set sensitivity;

generating a marker showing the existence of the region;

controlling a display to display the marker when the sensitivity is greater than a predetermined sensitivity threshold; and

controlling the display to display the fluorescence image acquired by the fluorescence-image acquisition sensor instead of the marker when the set sensitivity of the fluorescence-image acquisition sensor is equal to or less than the predetermined sensitivity threshold.